De novo centriole formation in human cells is error-prone and does not require SAS-6 self-assembly.
about
A primer on the mouse basal bodyComputational support for a scaffolding mechanism of centriole assembly.The PLK4-STIL-SAS-6 module at the core of centriole duplicationQuantitative analysis of human centrosome architecture by targeted proteomics and fluorescence imaging.Regulation of centriolar satellite integrity and its physiologyHuman microcephaly protein RTTN interacts with STIL and is required to build full-length centrioles.Promotion and Suppression of Centriole Duplication Are Catalytically Coupled through PLK4 to Ensure Centriole Homeostasis.Centriole triplet microtubules are required for stable centriole formation and inheritance in human cells.Once and only once: mechanisms of centriole duplication and their deregulation in disease.Kinetic analysis of de novo centriole assembly in heat-shocked mammalian cells.Emerging Picture of Deuterosome-Dependent Centriole Amplification in MCCs
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P2860
De novo centriole formation in human cells is error-prone and does not require SAS-6 self-assembly.
description
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name
De novo centriole formation in ...... t require SAS-6 self-assembly.
@ast
De novo centriole formation in ...... t require SAS-6 self-assembly.
@en
type
label
De novo centriole formation in ...... t require SAS-6 self-assembly.
@ast
De novo centriole formation in ...... t require SAS-6 self-assembly.
@en
prefLabel
De novo centriole formation in ...... t require SAS-6 self-assembly.
@ast
De novo centriole formation in ...... t require SAS-6 self-assembly.
@en
P2093
P2860
P356
P1433
P1476
De novo centriole formation in ...... ot require SAS-6 self-assembly
@en
P2093
Chien-Han Kao
Devrim Acehan
Kunihiro Uryu
Meng-Fu Bryan Tsou
Wann-Neng Jane
P2860
P356
10.7554/ELIFE.10586
P407
P577
2015-11-26T00:00:00Z